Skip to content
Home · Articles · A History of Tornadoes in Oklahoma City
Top 100 U.S. cities · Census rank #21

A History of Tornadoes in Oklahoma City

How Oklahoma City, Oklahoma's geography shapes tornado risk, with important city and regional events.

Boundary note: Census rank and population refer to Oklahoma City's incorporated or consolidated-government geography. Tornado context may include the surrounding county or metro and is labeled accordingly.
A waterspout beneath a storm cloud
Illustrative storm photograph; it does not depict a listed Oklahoma City event. Photo: Historic NWS Collection / NOAA, public domain.

Geography and storm exposure

Oklahoma City is part of the central and southern Plains. Gulf moisture can meet a dryline, front and strong winds aloft, creating organized supercells. Geography influences storm boundaries and exposure, but terrain, rivers and buildings do not create a dependable tornado shield.

Long storm paths can cross several counties and city jurisdictions. This page uses the incorporated city as its population reference and the surrounding region for meteorological context; those boundaries answer different questions and are labeled separately.

2025 city rank

#21 in the United States

Estimated population

719,849

Main season

April through June, with a smaller cool-season window

Important tornadoes to place in context

1

1999 Bridge Creek–Moore F5

A documented city or regional event that helps explain the local historical record.

2

2013 Moore EF5

A documented city or regional event that helps explain the local historical record.

3

2019 central Oklahoma tornado sequence

A documented city or regional event that helps explain the local historical record.

These events are starting points, not a claim that every path crossed Oklahoma City's incorporated limits. Tornadoes are surveyed by path and county; metropolitan labels in news coverage often describe a broader area.

Why the historical record changes over time

Older records favor destructive tornadoes that crossed settled places. Radar, trained spotters, phones and systematic damage surveys now capture many weak or brief events that earlier observers could miss. Apparent increases can therefore reflect detection and urban growth as well as weather variability.

Official sources

This educational article is not a live warning service. Use official alerts for current decisions.